论文标题
振荡冠状环的时间演变
Temporal evolution of oscillating coronal loops
论文作者
论文摘要
语境。目前对冠状结构的横向振荡进行了深入的研究,以探索相关的磁流失动力波物理学并进行局部培养基的地震学。目标。我们首次尝试测量冠状环样品的热力学演化,该样品会响应相应的活性区域的喷发,从而经历腐烂的扭结振荡。方法。使用来自SDO/AIA的六个冠状波长的数据,我们对喷发和振荡之前,期间和之后进行了差分排放度量(DEM)分析。结果。我们发现,DEM分布的发射度量,温度和宽度会在与横向振荡研究有关的时间尺度上发生显着变化。我们分析的参数没有明确的集体趋势。参数的最强变化发生在循环的初始扰动期间,背景结构的影响也可能解释了这种变化的大部分。结论。爆发活跃区域中振荡冠状环的DEM分析显示,时间尺度进化的证据对于研究振荡很重要。需要进一步的工作来分离可能导致温度,DEM分布宽度和总排放度量变化的各种观察和物理机制。
Context. Transverse oscillations of coronal structures are currently intensively studied to explore the associated magnetohydrodynamic wave physics and perform seismology of the local medium. Aims. We make a first attempt to measure the thermodynamic evolution of a sample of coronal loops that undergo decaying kink oscillations in response to an eruption in the corresponding active region. Methods. Using data from the six coronal wavelengths of SDO/AIA, we performed a differential emission measure (DEM) analysis of 15 coronal loops before, during, and after the eruption and oscillation. Results. We find that the emission measure, temperature, and width of the DEM distribution undergo significant variations on time scales relevant for the study of transverse oscillations. There are no clear collective trends of increases or decreases for the parameters we analysed. The strongest variations of the parameters occur during the initial perturbation of the loops, and the influence of background structures may also account for much of this variation. Conclusions. The DEM analysis of oscillating coronal loops in erupting active regions shows evidence of evolution on time scales important for the study of the oscillations. Further work is needed to separate the various observational and physical mechanisms that may be responsible for the variations in temperature, DEM distribution width, and total emission measure.